Contents
- Introduction
- Contents
- How to install
- Build a mesh
- Selecting finite element methods
- Selecting integration methods
- Mesh refinement
- Linear algebra procedures
- Standard assembly procedures
- Compute arbitrary elementary matrices - generic assembly procedures
- Incorporate new finite element methods in getfem++
- Incorporate new approximated integration methods in getfem++
- Level-sets, Xfem, fictitious domains
- Support for Xfem methods
- Interpolation of a finite element method on non-matching meshes
- Compute L2 and H1 norms
- Compute derivatives
- Export and view a solution
- Interpolation on different meshes
- The model bricks
-
- The model state variable
- Basic properties of a brick
- Brick parameters
- generic elliptic brick
- Source term brick
- Constraint brick
- Dirichlet condition brick
- Example of a complete Poisson problem
- Predefined solvers
- Isotropic linearized elasticity brick
- Qu term brick
- Helmholtz brick
- linear incompressibility (or nearly incompressibility) brick
- Small displacement plasticity brick
- Contact and friction conditions brick
- Linearized plate brick
- Large strain elasticity brick
- Large strain incompressibility brick
- Parallelization of getfem++
- Catch errors
- Example : Laplacian program
- Appendix A. Finite element method list
- Appendix B. Cubature method list
- References
- Index
